B29C66/90

PORTABLE TABLE TOP WELDER
20180036957 · 2018-02-08 ·

A portable table top welder for welding plastic material webs, the portable table top welder including a frame including a carrier housing and a support arm at which a welding device is arranged; at least one transport roller including a rotatable transport roller axle and at least one contact pressure roller that is rotatably supported at the carrier housing, wherein a weight is arranged at an eccentrical element which is rotatably connected at one side by a concentrically supported eccentrical element axle at the carrier housing and rotatably connected at another side by an eccentrically supported contact pressure roller axle at the contact pressure roller. The table top welder handles and transports easily and can be mounted on a table or on another carrier structure in a disengageable manner.

Detection, monitoring, and management of gas presence, gas flow and gas leaks in composites manufacturing

Porosity causing gas-based defects are detected, located, identified, and/or characterized by the use of defect information generated from gas flow data corresponding to gas flow characteristics measured by one or more sensors on a composite part processing piece such as a mold or membrane used during a composite manufacturing process. The defect information is generated using techniques including one or more of profiling the gas flow data, fingerprinting, line leak detection, analytical triangulation.

METHOD FOR MANUFACTURING A PLASTIC FUEL TANK WITH IMPROVED CREEP STRENGTH

A method for manufacturing a plastic fuel tank including: a) inserting a plastic parison including two distinct parts into an open two-cavity mold; b) inserting a core, bearing at least part of a reinforcing element configured to create a link between the two parison parts, inside the parison; c) pressing the parison firmly against the mold cavities, for example by blowing through the core and/or creating suction behind the cavities; d) fixing the part of the reinforcing element to at least one of the parison parts using the core; e) withdrawing the core; f) closing the mold, bringing its two cavities together to grip the two parison parts around their periphery to weld them together; g) injecting a pressurized fluid into the mold and/or creating a vacuum behind the mold cavities to press the parison firmly against the mold cavities; and h) opening the mold and extracting the tank.

DETERMINING AN AUTOMATIC BONDING SEQUENCE FOR OPTICAL BONDING

An automated bonding sequence system and method for customizing a bonding sequence is provided. The method includes the steps of detecting that a first substrate is in close proximity with the a second substrate, during an optical bonding operation, wherein at least the first substrate includes an amount of adhesive for optically bonding to the second substrate, stopping an automated process of optically bonding of the optical bonding operation, in response to the detecting, recording operator feedback control signals, the operator feedback control signals being received from a controller being operated by an operator to contact the first substrate and the second substrate, analyzing the operator feedback control signals to determine a bonding sequence for automatically optically bonding the first substrate and the second substrate, and resuming, by the processor, the automated process of the optical bonding operation.

Method for manufacturing a plastic fuel tank with improved creep strength

A method for manufacturing a plastic fuel tank including: a) inserting a plastic parison including two distinct parts into an open two-cavity mold; b) inserting a core, bearing at least part of a reinforcing element configured to create a link between the two parison parts, inside the parison; c) pressing the parison firmly against the mold cavities, for example by blowing through the core and/or creating suction behind the cavities; d) fixing the part of the reinforcing element to at least one of the parison parts using the core; e) withdrawing the core; f) closing the mold, bringing its two cavities together to grip the two parison parts around their periphery to weld them together; g) injecting a pressurized fluid into the mold and/or creating a vacuum behind the mold cavities to press the parison firmly against the mold cavities; and h) opening the mold and extracting the tank.

Air-cooled belt splicer
09701063 · 2017-07-11 · ·

Cool-down time is menimized by the use of a cooler having integral fins of high surface area, and the use of high-efficiency fans. Heat-up time is minimized by the low mass of the cooler, and the prevention of transmission of heat to the housing.

INSPECTION DEVICE AND INSPECTION SYSTEM
20250066040 · 2025-02-27 ·

An inspection device includes a base facing, in a first direction, a surface to be inspected, a contact section mounted on the base and configured to contact with a seal on the surface, a biasing device mounted on the base and configured to bias the contact section in a second direction, and a reciprocating mechanism at an end portion of the base on the one side and configured to move the base in the second direction. The biasing device includes a rotary shaft extending in a third direction, an arm being rotatable about the rotary shaft, extending at both sides in the second direction with respect to the rotary shaft, and included with the contact section at an end portion on the one side, and a biasing member at an end portion of the arm on the other side and configured to move the contact section in the second direction.

CONNECTOR FOR AN OPTICAL FIBER AND COMBINATIONS, KITS, AND METHODS OF USING THE SAME

A portable device for attaching a connector to an optical fiber, the optical fiber having an end, the device comprising means for receiving the optical fiber at the end of the optical fiber; and a connector station for autonomously attaching the connector to the optical fiber.

FUSER AND SEALER INTEGRATED SYSTEM

An integrated system for fusing and sealing of a plurality of tubes is disclosed. The integrated system includes one or more fusing units configured to cut one or more tubes of multiple tubes simultaneously, and fusing the one or more tubes together along their respective cut ends; one or more sealing units configured to seal an end of the tube of the multiple tubes; and a control unit for controlling functions of the one or more fusing units and the one or more sealing units.

Method and apparatus for reworking inconsistencies on parts
09610730 · 2017-04-04 · ·

A method and apparatus for reworking an inconsistency on a part. Information about the inconsistency on the part may be identified using data generated by a nondestructive evaluation system. A portion of a section of the part in which the inconsistency is located may be removed based on the information about the inconsistency. A profile for the section of the part may be identified. Rework image data may be generated using the profile in which the rework image data comprises a number of patch images. The number of patch images may be projected onto a rework material as a number of patch projections for use in forming a patch to be applied over the section of the part.